Castellote-Borrell Miquel, Domingo Marc, Merlina Francesca, Lu Huixia, Colell Salut, Bachiller Mireia, Juan Manel, Guedan Sonia, Faraudo Jordi, Guasch Judith
Dynamic Biomaterials for Cancer Immunotherapy, Max Planck Partner Group, Institut de Ciència de Materials de Barcelona (ICMAB-CSIC), Campus UAB, Bellaterra 08193, Spain.
Soft Matter Theory Group, Institut de Ciència de Materials de Barcelona (ICMAB-CSIC), Campus UAB, Bellaterra 08193, Spain.
ACS Appl Mater Interfaces. 2025 Mar 19;17(11):16548-16560. doi: 10.1021/acsami.4c19942. Epub 2025 Mar 5.
Chimeric antigen receptor (CAR) T therapy has shown unprecedented results in clinical practice, including long-term complete responses. One of the current challenges of CAR T therapy is to optimize its production in order to lower its cost. Currently, the in vivo activation of T cells by dendritic cells is replicated ex vivo using polymeric magnetic beads coated with antibodies to induce polyclonal T cell activation. However, current practice overlooks the importance of the complex environment that constitutes the lymph nodes, in which T cells activate and proliferate in vivo. Hydrogels are an ideal candidate material for mimicking the properties of natural tissues such as lymph nodes. In this study, key conditions of the composition, stiffness, and microarchitecture of hydrogels were experimentally and theoretically investigated to optimize primary human CAR T cell culture, focusing on CAR expression and proliferation. Poly(ethylene glycol)-heparin hydrogels featuring interconnected pores of 120 μm and an intermediate stiffness of 3.1 kPa were identified as the most suitable conditions for promoting CAR T cell expression and expansion. Specifically, these hydrogels increased the percentage of CAR+ cells by 50% and doubled the replication index compared to suspension cultures. In conclusion, these newly engineered hydrogels are an interesting tool to help improve CAR T cell manufacture and ultimately advance toward a broader clinical implementation of CAR T cell therapy.
嵌合抗原受体(CAR)T细胞疗法在临床实践中已显示出前所未有的效果,包括长期完全缓解。CAR T细胞疗法当前面临的挑战之一是优化其生产以降低成本。目前,通过用抗体包被的聚合物磁珠在体外复制树突状细胞在体内对T细胞的激活,以诱导多克隆T细胞激活。然而,当前的做法忽视了构成淋巴结的复杂环境的重要性,T细胞在该环境中于体内激活和增殖。水凝胶是模拟淋巴结等天然组织特性的理想候选材料。在本研究中,通过实验和理论研究了水凝胶的组成、硬度和微观结构的关键条件,以优化原代人CAR T细胞培养,重点关注CAR表达和增殖。具有120μm相互连通孔隙且中间硬度为3.1kPa的聚乙二醇-肝素水凝胶被确定为促进CAR T细胞表达和扩增的最合适条件。具体而言,与悬浮培养相比,这些水凝胶使CAR+细胞的百分比增加了50%,复制指数增加了一倍。总之,这些新设计的水凝胶是一种有趣的工具,有助于改进CAR T细胞制造,并最终推动CAR T细胞疗法更广泛地应用于临床。